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Showing 326 results View by: Thread Post Sort by
  • TPS546D24S: Pspice Output Voltage is Lower Than Expected

    Danilo Esquivel
    Danilo Esquivel
    Part Number: TPS546D24S Tool/software: We are using this part in a three-phase configuration but are modeling it in two-phase. When running it at steady state, the voltage was at around 792 mV when we have it set to 800 mV. Is this expected out of…
    • 5 months ago
    • Power management
    • Power management forum
  • TPS543C20: Output of the regulator ( 0.8V@40A ) is getting dropped to 0.673V when 8A load is applied

    Vyshnav vk
    Vyshnav vk
    TI Thinks Resolved
    Part Number: TPS543C20 Other Parts Discussed in Thread: TPS546D24A , Dear TI Team, 1. We are using TPS543C20RVFT IC for the core supply voltage of the main processor in our design. The output is configured to 0.8V 40A. We started validating the…
    • over 3 years ago
    • Power management
    • Power management forum
  • Answered
  • RE: TPS546A24A: Can TPS546A24A sink it's full spec current as well as source it. Bi-polar bridge application

    Peter James Miller
    Peter James Miller
    Resolved
    Kevin Oscroft The TPS546x24A devices have a negative current limit, which is fixed and not user programmable, and the under-current response to turn-off the low-side FET and remain free-wheeling for the remainder of the switching cycle is not programmable…
    • over 5 years ago
    • Power management
    • Power management forum
  • TPSM8D6B24: Excel calculator and schematics review

    PYTsai
    PYTsai
    TI Thinks Resolved
    Part Number: TPSM8D6B24 Tool/software: Hi Can you help review my customer's excel calculator file and schematics attached below ? we would like to check if any where we can improve the phase marging and gain margin, and also improve the output ripple…
    • 11 months ago
    • Power management
    • Power management forum
  • SoC電源設計:3つのステップで熱最適化された電源を設計する方法

    Yurina O.
    Yurina O.
    Other Parts Discussed in Post: TPS546D24A この記事では、通信基地局や試験・計測機器、データ・センターといった、システム・オン・チップ(SoC)アプリケーションの電源設計について解説します。 熱最適化された電源設計が簡単だったことなどありませんが、最近のSoCに必要な電力要件により、ますます難しい作業になっています。20年ほど前に初めて市場に出たFET(電界効果トランジスタ)内蔵型の降圧コンバータは、基板面積の制限が厳しくなる一方で、より大きな電力をポイント…
    • over 5 years ago
    • Japan
    • アナログ
  • RE: TPS546D24: Tps546d24

    Peter James Miller
    Peter James Miller
    Bahram Afghani Your mysecure access is pending, I have requested it be expedited. However, there is no pin-programming resistor combination from the TPS546D24A table that would make the TPS546D24 not communicate via PMBus, so that indicates there…
    • over 2 years ago
    • Power management
    • Power management forum
  • RE: TPS6521905: Power IC for XCZU7CG-1FFVF1517E

    Brenda Diaz
    Brenda Diaz
    Hi, Thank You for using E2E.I have listed below three options to power the Xilinx FPGAs. Let us know if you have any questions or need additional information. TPS65219 + discrete : This option uses our newest cost/size optimized PMIC. We are…
    • over 1 year ago
    • Power management
    • Power management forum
  • RE: TPS546D24: Link to data sheet of "non A" part

    Peter James Miller
    Peter James Miller
    mike stengle Are you looking for the TPS546D24 datasheet verse the TPS546D24A datasheet, or are you looking for an older version of the TPS546D24 datasheet? If you are looking for the current TPS546D24 datasheet, you will need to request access…
    • over 4 years ago
    • Power management
    • Power management forum
  • TPS546D24: Change TPS546D24 EEPROM Regs to TI Factory Default Value

    Qiang Ren
    Qiang Ren
    TI Thinks Resolved
    Part Number: TPS546D24 Tool/software: Hello Team, I'm still applying for a full D/S of the TPS546D24. Currently my customer wants to recover the device's EEPROM register to TI factory default value in their Lab, is there a guidance to do that? Thanks…
    • over 1 year ago
    • Power management
    • Power management forum
  • RE: redundant input power block configuration

    Young Zhao
    Young Zhao
    Hi , You can refer below PN#. 1. TPS546D24A - 2.95-V to 16-V, stackable 40-A synchronous SWIFT buck converter with pin-strapping and PMBus 2. TPS543C20A - 4-V to 16-V, 40-A synchronous SWIFT buck converter with adaptive internal compensation 3…
    • over 4 years ago
    • Power management
    • Power management forum
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